References
- Aníbal, J., Madeira, H.T., Carvalho, L.F., Esteves, E., Veiga-Pires, C. et al. (2013). Macroalgae mitigation potential for fish aquaculture effluents: an approach coupling nitrogen uptake and metabolic pathways using Ulva rigida and Enteromorpha clathrata. Environ. Sci. Pollut. Res. 21(23): 13324-13334. DOI: 10.1007/s11356-013-2427-x.
- APHA. (1998). Standard Methods for the Examination of Water and Waste Water, 20th Edition. American Public Health Association, Washington DC.
- Beaujouan, V., Durand, P., Ruiz, L., Aurousseau, P. & Cotteret, G. (2002). A hydrological model dedicated to topography-based simulation of nitrogen transfer and transformation. Rationale and application to the geomorphology– denitrification relationship. Hydrol. Process. 16: 493-507. DOI: 10.1002/hyp.327.
- Bliding, C. (1963). A critical survey of european taxa in Ulvales. Part 1. Casosiphonia, Blidingia, Enteromorpha. Opera Botanica. 8(3): 1-160.
- Bliding, C. (1968). A critical survey of european taxa in Ulvales. Part 2. Ulva, Ulvaria, Monostoma, Kornmannia. Botaniska Notiser. 121: 534-629.
- Blomster, J., Back, S., Fewer, D.P., Kiirikki, M., Lehvo, A. et al. (2002). Novel morphology in Enteromorpha (Ulvophyceae) forming green tides. Am. J. Bot. 89: 1756-1763. DOI: 10.3732/ajb.89.11.1756.
- Brault, D. & Quéquiner, B. (1989). Effect of inorganic and organic nitro gen sources on growth of Ulva gigantea (Kützing) Bliding. Aquaculture – a biotechnology in progress. European Aquaculture Society, Bredene, Belgium.
- Brodie, J., Maggs, C.A., & John, D.M. (2007). Green Seaweeds of Britain and Ireland. Published by British Phycological Society, London. 242 pp.
- CEVA. (2011). Contrôle de surveillance DCE 2010. Suivi des blooms de macroalgues opportunistes. Rapport final, 51 pp.
- Charlier, R.H., Morand, P. & Finkl, Ch.W. (2008). How Brittany and Florida coasts cope with green tides. Int. J. Environ. Stud. 65(2): 191-208. DOI: 10.1080/00207230701791448
- Chen, L., Feng, J. & Xie, S.L. (2015). Ulva shanxiensis (Ulvaceae), a new species from Shanxi, China. Novon. 23(4): 397-405. DOI: 10.3417/2013021.
- Copertino, M.D.S., Tormena, T. & Seeliger, U. (2009). Biofiltering efficiency, uptake and assimilation rates of Ulva clathrata (Roth) J. Agardh (Chlorophyceae) cultivated in shrimp aquaculture waste water. J. Appl. Phycol. 21: 31-45. DOI: 10.2983/035.030.0340.
- de Paula Silva, P.H., McBride, S., de Nys, R. & Paul, N.A. (2008). Integrating filamentous“green tide” algae into tropical pond-based aquaculture. Aquaculture 284: 74-80. DOI: 10.1016/j.aquaculture.2008.07.035.
- Fong, P., Donohoe, R.M. & Zedler, J.B. (1994). Nutrient concentration in tissue of the macroalga Enteromorpha as a function of nutrient history: an experimental evaluation using field microcosmos. Mar. Ecol. Prog. Ser. 106: 273-281.
- García, M.E. & Aboal, M. (2014). Environmental gradients and macroalgae in Mediterranean marshes: The case of Pego-Oliva marsh (East Iberian Peninsula). Sci. Total. Environ. 475: 216-224. DOI: 10.1016/j.scitotenv.2013.10.014.
- Guidone, M. & Thornber, C.S. (2013). Examination of Ulva bloom species richness and relative abundance reveals two cryptically co-occurring bloom species in Narragansett Bay, Rhode Island. Harmful Algae 24: 1-9. DOI: 10.1016/j.hal.2012.12.007.
- Göppert, H.R. & Cohn, F. (1850). Ueber die Algen Schlesiens. Übers. Arbeiten. Veränd. Schles. Ges. Vaterl. Cultur. 1: 93-95.
- Hansgirg, A. (1892). Prodromus der Algenflora von Böhmen. 2. Arch. Naturwiss. Landesdurchforsch. Böhmen. 81: 268.
- Hardy, G., & Guiry, M.D. (2008). A Check-list and Atlas of the Seaweeds of Britain and Ireland. Published by British Phycological Society. 473 pp.
- Hayden, H.S., Blomster, J., Maggs, C.A., Silva, P.C., Stanhope, M.J. et al. (2003). Linnaeus was right all along: Ulva and Enteromorpha are not distinct genera. Eur. J. Phycol. 38: 277-94. DOI: 10.1080/1364253031000136321.
- Hernández, I., Peralta, G., Pérez-Lloréns, J.L., Vergara, J.J. & Niell, F.X. (1997). Biomass and dynamics of growth of Ulva species in Palmones river estuary. J. Phycol. 33: 764-772. DOI: 10.1111/j.0022-3646.1997.00764.x.
- Hiraoka, M., Shimada, S., Uenosono, M. & Masuda, M. (2003). A new green-tide-forming alga, Ulva ohnoi Hiraoka et Shimada sp. nov. (Ulvales, Ulvophyceae) from Japan. Phycol. Res. 52(1): 17-29. DOI: 10.1111/j.1440-1835.2003.00321.x.
- Ichihara, K., Mineur, F. & Shimada, S. (2011). Isolation and temporal expression analysis of freshwater-induced genes in Ulva limnetica (Ulvales, Chlorophyta). J. Phycol. 47(3): 584-590. DOI: 10.1111/j.1529-8817.2011.01001.x.
- Ichihara, K., Miyaji, K., & Shimada, S. (2013). Comparing the low-salinity tolerance of Ulva species distributed in different environments. Phycol. Res. 61(1): 52-57. DOI: 10.1111/j.1440-1835.2012.00668.x.
- Ishii, Y., Murakami, K., Yauchi, E., Ishii, T. & Taki, K. (2001). Effect of Ulva sp. on material circulation in Tideland Lake located in Tokyo inner bay (In Japanese). Proc. Coast. Eng. JSCE. 48: 1136-1140.
- Israel, A.A., Friedlander, M. & Neori, A. (1995). Biomass yield, photosynthesis and morphological expression of Ulva lactuta. Bot. Mar. 38: 297-302. DOI: 10.1515/botm.1995.38.1-6.297.
- Jimenez del Rio, M., Ramazanov, Z. & Garcia-Reina, G. (1996). Ulva rigida (Ulvales, Chlorophyta) tank culture as biofilters for dissolved inorganic nitrogen from fishpond effluents. Hydrobiologia. 326/327: 61-66. DOI: 10.1007/BF00047787.
- Kaštovský, J., Hauer, T., Mareš, J., Krautová, M., Bešta, T. et al. (2011). A review of the alien and expansive species of freshwater cyanobacteria and algae in the Czech Republic. Biol. Invasions 12: 3599-3625. DOI: 10.1007/s10530-010-9754-3.
- Kim, J.K., Kraemer, G.P., Neefus, C.D., Chung, I.K. & Yarish, C. (2007). Effects of temperature and ammonium on growth, pigment production and nitrogen uptake by four species of Porphyra (Bangiales, Rhodophyta) native to the New England coast. J. Appl. Phycol. 19: 431-440. DOI: 10.1007/s10811-006-9150-7.
- Koeman, R.P.T. & van den Hoek, C. (1982a). The taxonomy of Enteromorpha Link, 1820, (Chlorophyceae) in The Netherlands I. The section Proliferae. Cryptogamie, Algologie 3: 37-70.
- Koeman, R.P.T., & van den Hoek, C. (1982b). The taxonomy of Enteromorpha Link, 1820, (Chlorophyceae) in The Netherlands I. The section Enteromorpha. Arch. Hydrobiol. Suppl. Algological Studies 32: 279-330.
- Koeman, R.P.T., & van den Hoek, C. (1984). The taxonomy of Enteromorpha Link, 1820, (Chlorophyceae) in The Netherlands I. The sections Flexuosae and Clathratae and an addition to the section Proliferae. Cryptogamie, Algologie 5: 21-61.
- Liu, F., Pang, S.J., Xu, N., Shan, T.F., Sun, S. et al. (2010). Ulva diversity in the Yellow Sea during the large-scale green algal blooms in 2008–2009. Phycol. Res. 58(4): 270-279. DOI: 10.1111/j.1440-1835.2010.00586.x.
- Luo, M.B., Liu, F. & Xu, Z.L. (2012). Growth and nutrient uptake capacity of two co-occurring species, Ulva prolifera and Ulva linza. Aquat. Bot. 100: 18-24. DOI: 10.1016/j.aquabot.2012.03.006.
- Mareš, J., Leskinen, E., Sitkowska, M., Skácelová, O. & Blomster, J. (2011). True identity of the European freshwater Ulva (Chlorophyta, Ulvophyceae) revealed by a combined molecular and morphological approach. J. Phycol. 47(5): 1177-1192. DOI: 10.1111/j.1529-8817.2011.01048.x.
- McAvoy, K.M. & Klug, J.L. (2005). Positive and negative effects of riverine input on the estuarine green alga U. intestinalis (syn. E. intestinalis ) (Linneus). Hydrobiologia 545: 1-9. DOI: 10.1007/s10750-005-1923-5.
- Melton, J.T., Leliaert, F., Tronholm, A. & Lopez-Bautista, J.M. (2015). The complete chloroplast and mitochondrial genomes of the green macroalga Ulva sp. UNA00071828 (Ulvophyceae, Chlorophyta). PLoS ONE. 10(4), art. no. e0121020. DOI: 10.1371/journal.pone.0121020.
- Messyasz, B. & Rybak, A. (2009). The distribution of green algae species from the Ulva genera (syn. Enteromorpha ; Chlorophyta) in Polish inland waters. Oceanol. Hydrobiol. St. 38: 121-138. DOI: 10.2478/v10009-009-0001-0.
- Messyasz, B. & Rybak, A. (2011). Abiotic factors affecting the development of Ulva sp. (Ulvophyceae; Chlorophyta) in freshwater ecosystems. Aquatic Ecol. 45(1): 75-87. DOI: 10.1007/s10452-010-9333-9.
- Neori, A., Cohen, I. & Gordin, H. (1991). Ulva lactuca biofilters for marine fishpond effluents. II. Growth rate, yield and C:N ratio. Bot. Mar. 34: 483-489. DOI: 10.1515/botm.1991.34.6.483.
- Pang, S.J., Liu, F., Shan, T.F., Xu, N., Zhang, Z.H. et al. (2010). Tracking the algal origin of the Ulva bloom in the Yellow Sea by a combination of molecular, morphological and physiological analyses. Mar. Environ. Res. 69: 207-215. DOI: 10.1016/j.marenvres.2009.10.007.Oceanological and Hydrobiological Studies, VOL. 45, ISSUE 1 | MARCH 2016 Oceanological and Hydrobiological Studies, VOL. 45, ISSUE 1 | MARCH 2016
- Perrot, T., Rossi, N., Ménesguen, A. & Dumas, F. (2014). Modelling green macroalgal blooms on the coasts of Brittany, France to enhance water quality management. J. Mar. Syst. 132: 38-53. DOI: 10.1016/j.jmarsys.2013.12.010.
- Pliński, M. & Jóźwiak, T. (2004). The distribution of water vegetation on the Polish coast of the Baltic sea in 1996–2000. Oceanol. Hydrobiol. St. 32(2): 29-40.
- Pliński, M. (1988). Glony Zatoki Gdańskiej - klucz do oznaczania gatunków, VI Zielenice. Wydawnictwo Uniwersytetu Gdańskiego. 6: 83-66.
- Pliński, M., & Hindák F. (2012). Flora Zatoki Gdańskiej i wód przyległych (Bałtyk Południowy) - klucz do oznaczania gatunków, Zielenice - Chlorophyta. Wydawnictwo Uniwersytetu Gdańskiego. 7(2): 5-43.
- Reed, R. & Moffat, L. (2003). Copper toxicity and copper tolerance in Enteromorpha compressa (L.) Grev. J. Exp. Mar. Biol. Ecol. 1: 85-103. DOI: 10.1016/0022-0981(83)90173-9.
- Ruiz, L., Abiven, S., Martin, C., Durand, P., Beaujouan, V. et al. (2002). Effect on nitrate concentration in stream water of agricultural practices in small catchments in Brittany II— temporal variations and mixing processes. Hydrol. Earth Syst. Sci. 6: 507-513. DOI: 10.5194/hess-6-507-2002.
- Rybak, A. (2015). Revision of herbarium specimens of freshwater Enteromorpha -like Ulva (Ulvaceae, Chlorophyta) collected from Central Europe during the years 1849–1959. Phytotaxa 218(1): 001-029. DOI: 10.11646/phytotaxa.218.1.1.
- Rybak, A., Messyasz, B. & Łęska, B. (2011). Using BCF factor in monitoring of heavy metals pollution on example of freshwater Ulva from Malta Reservoir in Poznan. Environ. Indust. 2: 9-31.
- Rybak, A., Messyasz, B. & Łęska, B. (2012a) Bioaccumulation of alkaline soil metals (Ca, Mg) and heavy metals (Cd, Ni, Pb) patterns expressed by freshwater species of Ulva (Wielkopolska, Poland). Int. Rev. Hydrobiol. 97(6): 542-555. DOI: 10.1002/iroh.201201452.
- Rybak, A., Messyasz, B. & Łęska, B. (2012b). Freshwater Ulva (Chlorophyta) as a bioaccumulator of selected heavy metals (Cd, Ni and Pb) and alkaline earth metals (Ca and Mg). Chemosphere. 89(9): 1064-1074. DOI: 10.1016/j.chemosphere.2012.05.071.
- Rybak, A., Messyasz, B., Łęska, B., Pikosz, M. & Fabrowska, J. (2012c). Nitrogen assimilation on example of water plants. Environ. Indust. 1: 1-28.
- Rybak, A., Messyasz, B. & Łęska, B. (2013). The accumulation of metal (Co, Cr, Cu, Mn and Zn) in freshwater Ulva (Chlorophyta) and its habitat. Ecotoxicology 22(3): 558-573. DOI: 10.1007/s10646-013-1048-y.
- Rybak, A., Czerwoniec, A., Gąbka, M. & Messyasz, B. (2014). Ulva flexuosa (Ulvaceae, Chlorophyta) inhabiting inland aquatic ecosystems: molecular, morphological and ecological discrimination of subspecies. Eur. J. Phycol. 49(4): 471-485. DOI: 10.1080/09670262.2014.976662.
- Schroeder, G., Messyasz, B., Łęska, B., Fabrowska, J., Pikosz, M. et al. (2013). Biomass of freshwater algae as raw material for the industry and agriculture. Chem. Rev. 92(7): 1001-1004.
- Sfriso, A., Marcomini, A., Pavoni, B. (1987). Relationships between macroalgae biomass and nutrient concentrations in the hypertrophic area of the Venice lagoon. Mar. Environ. Res. 22: 297-312. DOI: 10.1016/0141-1136(87)90005-5.
- Sfriso, A., Pavoni, B., Marcomini, A. & Orio, A. (1988). Annual variation of nutrients in the lagoon of Venice. Mar. Pollut. Bull. 19: 54-60. DOI: 10.1016/0025-326X(88)90780-1.
- Smetacek, V. & Zingone, A. (2013). Green and golden seaweed tides on the rise. Nature. 504: 84-88. DOI: 10.1038/nature12860.
- Starmach, K. (1972). Zielenice nitkowate. In: Starmach K. (Ed.), Flora słodkowodna Polski, Państwowe Wydawnictwo Naukowe, Warszawa-Kraków. 10: 163.
- Taboada, E.B. (2009). Simultaneous ammonium and phosphate uptake capacity of macroalage Ulva species in effluent seawater. J. Biosci. Bioeng. 108 pp.
- Water Braak, C.J.F. & Šmilauer, P. (1998). CANOCO reference manual and user’s guide to Canoco for windows software for canonical community ordination (Version 4). Centre for Biometry, Wageningen.
- Valiela, I., McClelland, J., Hauxwell, J., Behr, P.J., Hersh, D. et al. (1997). Macroalgal blooms in shallow estuaries: controls and ecophysiological and ecosystem consequences. Limnol. Oceanogr. 42: 1105-1118. DOI: 10.4319/lo.1997.42.5_part_2.1105
- Water Framework Directive. (2000). Directive 2000/60/EC of the European Parliament and the Council of 23rd October 2000 establishing a framework for Community action in the field of water policy.